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Eaton Cutler-Hammer MTE Transformers C0500E2AFB

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C0500E2AFB

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The Eaton Cutler-Hammer C0500E2AFB control transformer is designed specifically for reliable operation within MTE Transformers series. This unit operates efficiently with copper windings and is rated for 500 Volt-Amperes (VA).

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Technical specifications for C0500E2AFB

ManufacturerEaton Cutler-Hammer
Product TypeControl Transformer
Product LineMTE Transformers
Part NumberC0500E2AFB
UPC786680420962
Coil MaterialCopper Windings
DesignMTE Design
Tap SizeNone
Volt-Ampere Rating500 VA
Primary Voltage Ratings220 x 400 Volts, 230 x 460 Volts, 240 x 480 Volts
Secondary Voltage Ratings110/115/120 Volts
Frequency50/60 Hz
2-Pole Primary Fuse BlockIncluded
Compatible Fuse TypeNon-Rejection Fuses
Molded-In TerminalsIncluded
Silicon Steel LaminationsIncluded
Temperature Rating55 degrees Celsius

The C0500E2AFB from Eaton Cutler-Hammer represents a robust control transformer within the MTE Transformers series, engineered for dependable performance. Constructed with copper windings, it is designed to support a volt-ampere rating of 500 VA. This model operates under various primary voltage ratings, including configurations of 220 x 400 volts, 230 x 460 volts, and 240 x 480 volts. For its secondary output, it provides voltage options of 110, 115, or 120 volts.

This transformer is suitable for both 50 and 60 Hertz frequency applications, ensuring flexibility for standard equipment needs. It comes with an integrated 2-pole primary fuse block to protect against potential overcurrents, specifically compatible with non-rejection fuses. Additionally, the unit includes molded-in terminals for straightforward installation.

The transformer utilizes silicon steel laminations to minimize energy losses, enhancing durability and efficiency. Rated for a maximum temperature of 55 degrees Celsius, it is designed for operational reliability in various environments. The C0500E2AFB is crafted to meet the needs of modern industrial systems that require effective voltage control and safe operation.